4.7 Article

Targeting the Mitochondrial Protein VDAC1 as a Potential Therapeutic Strategy in ALS

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出版社

MDPI
DOI: 10.3390/ijms23179946

关键词

VDAC1; ALS; mutant SOD1; mitochondria; apoptosis; misfolded proteins

资金

  1. Israel Science Foundation [284/19, 974/19]

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This study suggests that the interaction between VDAC1 and SOD1 is involved in the pathogenesis of ALS. By inhibiting VDAC1 oligomerization, it is possible to reduce cell apoptosis and related processes caused by mutant SOD1, thus improving muscle function in ALS patients.
Impaired mitochondrial function has been proposed as a causative factor in neurodegenerative diseases, including amyotrophic lateral sclerosis (ALS), caused by motor neuron degeneration. Mutations in superoxide dismutase (SOD1) cause ALS and SOD1 mutants were shown to interact with the voltage-dependent anion channel 1 (VDAC1), affecting its normal function. VDAC1 is a multi-functional channel located at the outer mitochondrial membrane that serves as a mitochondrial gatekeeper controlling metabolic and energetic crosstalk between mitochondria and the rest of the cell and it is a key player in mitochondria-mediated apoptosis. Previously, we showed that VDAC1 interacts with SOD1 and that the VDAC1-N-terminal-derived peptide prevented mutant SOD1 cytotoxic effects. In this study, using a peptide array, we identified the SOD1 sequence that interacts with VDAC1. Synthetic peptides generated from the identified VDAC1-binding sequences in SOD1 directly interacted with purified VDAC1. We also show that VDAC1 oligomerization increased in spinal cord mitochondria isolated from mutant SOD1(G93A) mice and rats. Thus, we used the novel VDAC1-specific small molecules, VBIT-4 and VBIT-12, inhibiting VDAC1 oligomerization and subsequently apoptosis and associated processes such as ROS production, and increased cytosolic Ca2+. VBIT-12 was able to rescue cell death induced by mutant SOD1 in neuronal cultures. Finally, although survival was not affected, VBIT-12 administration significantly improved muscle endurance in mutant SOD1(G93A) mice. Therefore, VBIT-12 may represent an attractive therapy for maintaining muscle function during the progression of ALS.

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